首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Probing the antigen-antibody interaction towards ultrasensitive recognition of cancer biomarker in adenocarcinoma cell lysates using layer-by-layer assembled silver nano-cubics with porous structure on cysteamine caped GQDs
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Probing the antigen-antibody interaction towards ultrasensitive recognition of cancer biomarker in adenocarcinoma cell lysates using layer-by-layer assembled silver nano-cubics with porous structure on cysteamine caped GQDs

机译:逐层组装银纳米立方探测腺癌细胞裂解物在腺癌细胞裂解物中对癌细胞裂解物超细识别的抗原 - 抗体相互作用,具有多孔结构在半胱胺上的GQDS

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摘要

The incidence of breast cancer has been increasing over the years. To control and monitor this disease several tumor biomarkers have been proposed for early diagnosis, patient follow-up and/or treatment guidance. The only serum breast cancer biomarker in current use is the cancer antigen 15-3 (CA 15-3). Highly sensitive and label-free detection of the biomarker carbohydrate antigen 15-3 (CA 15-3) remains a challenge in the diagnosis of breast cancer. Here, a novel electrochemical immunosensor capable of sensitive and label-free detection of CA 15-3 is reported. This unique immunosensor, equipped with a highly conductive nanocomposite (i.e., thiolated graphene quantum dots modified silver nanocubics (Ag NCs)-modified electrode, exhibited significantly increased electron transfer and high sensitivity towards CA 15-3. This novel immunosensor, with a limit of detection 0.019 U/mL, worked well over two linear range of 0.095-0.5 and 0.25-1 U/mL. Unlike conventional immunosensors, which usually involve complicated label processing and time consuming separations, the use of highly conductive graphene avoids the need for labels and is simple in nature. The strategy developed for this immunosensor provides a promising approach for clinical research and diagnostic applications.
机译:多年来,乳腺癌的发病率一直在增加。为了控制和监测该疾病,已经提出了几种肿瘤生物标志物用于早期诊断,患者的后续和/或治疗指导。目前使用的唯一血清乳腺癌生物标志物是癌症抗原15-3(CA 15-3)。对生物标志物碳水化合物抗原15-3(CA 15-3)的高敏感和无标记检测仍然是乳腺癌诊断的挑战。这里,报道了一种能够敏感的新型电化学免疫传感器和无敏感的Ca 15-3检测。这种独特的免疫传感器配备有高导电纳米复合材料(即硫醇化石墨烯量子点改性银纳米纤维(Ag NCS) - 序列电极,对Ca 15-3的电子转移显着增加和高敏感性。这种新型免疫传感器,限制检测0.019 U / ml,在0.095-0.5和0.25-1u / ml的两个线性范围内工作。与常规免疫传感器不同,这通常涉及复杂的标签加工和耗时的分离,使用高导电石墨烯避免了对标签的需求并且本质上很简单。为该免疫传感器开发的策略为临床研究和诊断应用提供了有希望的方法。

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